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Q.Define mass defect and binding energy.

Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2026Subjective· 2mImportance★★★★★
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Mass defect is the missing mass when nucleons bind; binding energy is its energy equivalent, Eb=Δm c2E_b=\Delta m\,c^2.

Mass defect (Δm\Delta m). The measured mass of a nucleus is always less than the sum of the masses of its individual protons and neutrons. This difference is the mass defect:

Δm=[Z mp+(A−Z) mn]−Mnucleus,\Delta m = \big[Z\,m_p + (A-Z)\,m_n\big] - M_{\text{nucleus}},

where ZZ = number of protons, A−ZA-Z = number of neutrons.

Binding energy (EbE_b). The 'missing' mass is converted into the energy that holds the nucleus together. By Einstein's mass–energy relation, this binding energy is

Eb=Δm c2.E_b = \Delta m\,c^2. …

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